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诱导的内源性氮浓度变化影响水稻中微小RNA的转录表达。

induced endogenous nitrogen concentration variation affects transcriptional expression of miRNAs in rice.

作者信息

Zhang Yong, Fan Xiaoru, Wang Yulong, Kong Pulin, Zhao Ling, Fan Xiaorong, Zhang Yadong

机构信息

Institute of Food Crops, Jiangsu Academy of Agricultural Sciences, Jiangsu High Quality Rice Research and Development Center, Nanjing Branch of China National Center for Rice Improvement, Nanjing, China.

School of Chemistry and Life Science, Anshan Normal University, Anshan, China.

出版信息

Front Plant Sci. 2023 Feb 24;14:1093676. doi: 10.3389/fpls.2023.1093676. eCollection 2023.

Abstract

The studies of rice nitrogen concentration on the expression of miRNA so far are mostly limited to the exogenous nitrogen, leaving the effect of endogenous nitrogen largely unexplored. OsNAR2.1 is a high-affinity nitrate transporter partner protein which plays a central role in nitrate absorption and translocation in rice. The expression of could influence the concentration of the endogenous nitrogen in rice. We showed that the expression and production of miRNA in rice can be influenced by manipulating the endogenous nitrogen concentration transgenic lines. The small RNA content, particularly 24 nucleotides small RNA, expressed differently in two transgenic rice lines (nitrogen efficient line with overexpression of (Ov199), nitrogen-inefficient line with knockdown by RNAi (RNAi)) compared to the wild-type (NP). Comparative hierarchical clustering expression pattern analysis revealed that the expression profiles of mature miRNA in both transgenic lines were different from NP. Several previously unidentified miRNAs were identified to be differentially expressed under different nitrogen concentrations, namely miR1874, miR5150, chr3-36147, chr4-27017 and chr5-21745. In conclusion, our findings suggest that the level of endogenous nitrogen concentration variation by overexpression or knockdown could mediate the expression pattern and intensity of miRNA in rice, which is of high potential to be used in molecular breeding to improve the rice responses towards nitrogen utilization.

摘要

目前关于水稻氮浓度对miRNA表达的研究大多局限于外源氮,而内源氮的影响在很大程度上尚未得到探索。OsNAR2.1是一种高亲和力硝酸盐转运体伴侣蛋白,在水稻硝酸盐吸收和转运中起核心作用。其表达可能会影响水稻内源氮的浓度。我们发现,通过操纵转基因品系中的内源氮浓度,可以影响水稻中miRNA的表达和产生。与野生型(NP)相比,两种转基因水稻品系(过表达OsNAR2.1的氮高效品系(Ov199)、通过RNA干扰敲低OsNAR2.1的氮低效品系(RNAi))中的小RNA含量,特别是24个核苷酸的小RNA,表达存在差异。比较层次聚类表达模式分析表明,两个转基因品系中成熟miRNA的表达谱均与NP不同。在不同氮浓度下,鉴定出几个先前未鉴定的差异表达miRNA,即miR1874、miR5150、chr3-36147、chr4-27017和chr5-21745。总之,我们的研究结果表明,通过过表达或敲低OsNAR2.1来改变内源氮浓度水平,可以介导水稻中miRNA的表达模式和强度,这在分子育种中具有很高的潜力,可用于改善水稻对氮利用的反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d0f9/9998545/fc252643f78d/fpls-14-1093676-g001.jpg

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